刘强1,,,
韩文功2,
张敏1,
王天琪1,
肖建恩1,
伍钧鸿1
1. 中国石油大学(华东)地球科学与技术学院, 山东青岛 266580
2. 中石化地球物理公司, 北京 100029
基金项目: 国家自然科学基金项目(41204086,41374122,41504100),山东省自然科学基金项目(ZR2013DL012)和中国石油大学(华东)研究生创新工程项目(YCXJ2016007)联合资助
详细信息
作者简介: 李振春, 男, 1963年生, 教授, 博士生导师, 主要从事地震成像与偏移速度建模、地震波传播与正演模拟和多尺度地震联合反演与综合解释的研究与应用工作.E-mail:leonli@upc.edu.cn
通讯作者: 刘强, 男, 1990年生, 硕士, 主要从事各向异性介质正演与偏移成像方法研究.E-mail:18266200368@163.com
中图分类号: P631收稿日期:2016-09-30
修回日期:2017-09-14
上线日期:2018-04-05
Angle domain converted wave Gaussian beam migration in VTI media
LI ZhenChun1,,LIU Qiang1,,,
HAN WenGong2,
ZHANG Min1,
WANG TianQi1,
XIAO JianEn1,
WU JunHong1
1. School of Geosciences, China University of Petroleum(East China), Shandong Qingdao 266580, China
2. Geophysical Corporation, SINOPEC, Beijing 100029, China
More Information
Corresponding author: LIU Qiang,E-mail:18266200368@163.com
MSC: P631--> Received Date: 30 September 2016
Revised Date: 14 September 2017
Available Online: 05 April 2018
摘要
摘要:转换波偏移可以利用纵横波波场信息,得到高分辨率的成像结果,从而为油藏描述提供高质量的地震资料.目前的研究主要是利用纵波波场信息进行偏移成像,然而,传统的纵波方法在复杂探区成像时具有一定的局限性.为此,本文在各向异性介质声波射线追踪算法的基础上,推导出各向异性介质转换波射线追踪方程,发展了一种转换波射线追踪算法;并将研究的追踪算法应用到偏移成像中,提出了一种各向异性VTI介质角度域转换波高斯束偏移成像方法.通过各向异性VTI介质断块模型和复杂构造模型试算,说明了本文方法的正确性和有效性.模型试算的结果表明,在考虑地下各向异性时,本文研究的方法具有更好的成像效果,提取的角道集结果可以为偏移速度分析提供依据.
关键词: 各向异性/
角度域/
转换波/
高斯束偏移
Abstract:As targets are highly variable complex reservoirs, the difficulty of hydrocarbon exploration has been gradually increasing. Taking into account the wavefield information of both primary and shear waves, images with high resolution could be obtained by using the migration method of converted waves, which can help lithology identification, reservoir prediction and reservoir characterization. However, by far only the information of the primary wavefield is widely utilized in migration, which results in many drawbacks of the primary migration method especially when the prospecting area is complex.
On the basis of the anisotropic acoustic ray tracing algorithm, we derive the equations and develop a ray tracing algorithm of converted waves for an anisotropic medium. Furthermore, we summarize the imaging formula of converted waves in the angle domain for this medium.
Using this algorithm, we propose a Gaussian beam migration imaging method of converted waves in the angle domain for anisotropic VTI media. Numerical experiments on fault-block and complex structural models have verified its accuracy and efficiency. Besides, the proposed method is not only more efficient compared with the anisotropic Gaussian beam migration imaging method put forward, but also more accurate in comparison with the isotropic Gaussian beam migration imaging method. Moreover, the result of angle domain common imaging gathers could also provide useful information for migration velocity analysis.
Key words:Anisotropic/
Angle domain/
Converted wave/
Gaussian beam migration
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http://www.geophy.cn/data/article/export-pdf?id=dqwlxb_14465